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SYNERGY: A regional bio-economic model analyzing farm-to-farm exchanges and legume production to enhance agricultural sustainability

机译:协同作用:区域生物经济模式分析农业到农场交易所和豆科生产,以提高农业可持续性

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Agricultural specialization has disconnected crop and livestock production in many farms and regions. As a result, crop farms are deficient in nitrogen to fertilize their crops, while livestock farms are deficient in proteins to feed their animals. The increased consumption of nitrogen rich input raised economics and environmental questions. In this study, we tested two mechanisms to reconnect crop and livestock production: increasing legume production and developing farm-to-farm exchanges of crops and manure. To do so, we developed the SYNERGY bio-economic model, which represents specialized farm types in a region and models exchanges between them. Applied to western France, it analyzes economic, technical and environmental impacts.When the legume share reached 10% of the region's area, legume production increased more on crop farms than on livestock farms and its use in feed was still limited. When farms could export more manure, legume production increased but N losses increased due to an intensification of pig production. This rebound effect offset the environmental benefits linked to the decrease in synthetic N fertilizers use. When local crop exchanges were possible, they remained limited and did not affect indicators. Thus, the two levers studied are insufficient to improve sustainability, mainly because of high livestock production.
机译:农业专业化在许多农场和地区有断开的作物和牲畜生产。因此,农作物农场缺乏氮气来施肥,而畜牧农场缺乏蛋白质以喂养他们的动物。增加的氮气投入消耗量提高了经济学和环境问题。在这项研究中,我们测试了两种重新连接作物和牲畜生产的机制:增加豆科生产和发展农作物和粪肥的农业到农场交流。为此,我们开发了协同生物经济模式,该模型代表了一个地区和模型之间的专业农场类型。它适用于法国西部,分析经济,技术和环境影响。当豆类股达到该地区地区的10%时,豆科植物生产在农作物农场比畜牧场更多地增加,其用途仍然有限。当农场可以出口更多粪便时,由于猪生产的强化,豆类产量增加,但损失增加。这种反弹效应抵消了与合成肥料的降低有关的环境益处。当可能的局部作物交换时,它们仍然有限,不影响指标。因此,研究的两个杠杆不足以提高可持续性,主要是因为牲畜生产高。

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